Anode– tag –
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Solid-State Batteries
SwRI and SMU Pioneer Interfacial Engineering for Solid-State Battery Life Extension: Ultrathin Film on Lithium Metal Anode Boosts Reliability and Safety
Labroots USA Overview A research team from Southwest Research Institute (SwRI) and Southern Methodist University (SMU) is investigating a novel method to enhance solid-state battery reliability and safety. They plan to implement 'interfa... -
Solid-State Batteries
Conductive and Stable CPE Interlayer Solves NASICON Solid-State Battery Challenges, Enabling Over 300 Hours Stable Cycling and 90% Capacity Retention
ACS Publications International Overview NASICON-based solid electrolytes are promising candidates for all-solid-state lithium batteries due to high ionic conductivity and wide electrochemical stability, but interfacial side reactions wit... -
Solid-State Batteries
Honda Develops Novel Dendrite Suppression Method for Solid-State Batteries, Achieving Cost Reduction and Extended Lifespan with Thin Plastic Barrier and Roll-Press Manufacturing
Top Speed Japan Overview Honda has reportedly developed a breakthrough method to prevent dendrite growth in solid-state battery technology. Their solution involves placing a thin plastic barrier where lithium crystals would otherwise for... -
Solid-State Batteries
ACS Paper: Li-Al-Si-Zn Alloy Anode Achieves Ultra-Rapid Charging and Extended Life in All-Solid-State Batteries, Retaining 80% Capacity After 2050 Cycles
ACS Sustainable Chemistry & Engineering USA Overview A quaternary Li-Al-Si-Zn (ASZ@Li) alloy anode has been developed, enabling ultra-rapid charging for all-solid-state batteries through a multiphase electron-ion co-conductive network. A... -
Solid-State Batteries
Argonne Lab Unveils 1-Nanometer Magnesium Oxide Coating: A Breakthrough for Sulfide Solid Electrolyte Stability
Argonne National Laboratory USA Overview Researchers at Argonne National Laboratory have identified and validated a 1-nanometer-thick magnesium oxide (MgO) protective coating that significantly enhances the chemical stability of sulfide-... -
Solid-State Batteries
Succinic Anhydride Effectively Suppresses Dendrite Growth in Lithium Metal Anodes, Improving Solid-State Battery Cycle Life
ResearchGate International Overview Succinic Anhydride has been identified as an effective deposition-regulating additive to suppress dendrite formation, a critical challenge for lithium metal anodes. This additive strengthens the solid ... -
Solid-State Batteries
Direct Growth of Na-Ion Conducting Glass Solid Electrolyte Achieves Significant 6.2 Ω Interfacial Resistance Reduction for Room-Temperature Sodium-Sulfur Pouch Cells
ResearchGate International Overview To overcome high interfacial resistance in solid-state batteries, researchers developed a novel solid-liquid growth method to directly grow a Na+ conducting solid electrolyte on a sodium metal anode. T... -
Solid-State Batteries
Xiamen and Zhejiang Universities Achieve High-Safety 4.5V Lithium Metal Batteries with DES-Based Solid Polymer Electrolyte
IEST Instrument China Overview Researchers from Xiamen University and Zhejiang University successfully developed and evaluated a Deep Eutectic Solvent (DES)-based solid polymer electrolyte (SPE), DES-ETPTA, demonstrating superior thermal... -
Solid-State Batteries
Advanced Composite Polymer Electrolyte Boosts Interfacial Stability and Long-Term Cycling in NASICON-Based Solid-State Lithium Batteries
ACS Applied Energy Materials USA Overview Research demonstrates a high-ion-conductive composite polymer electrolyte (CPE) interlayer significantly enhances interfacial stability in NASICON-based solid-state lithium batteries, enabling lo... -
New Technology
PEM Electrolyzer Stack Lifespan Reaches 60,000-100,000 Hours, Bolstering Commercial Green Hydrogen Projects
(Analysis/Industry Blog) Unknown Overview In 2026, PEM electrolyzer stack lifetimes range from 60,000 to 100,000 operational hours, a significant improvement supporting commercial green hydrogen projects. However, real-world operating co...